determine the moments of inertia about the horizontal and vertical axis for the steel plate
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- For the section below: а. Determine the moment of inertia with respect to the X-axis. b. Determine the moment of inertia with respect to the Y-axis. C. Determine the moment of inertia with respect to the X'-axis. 40 mm 80 80 30° tw = 40 mm 40 mm 200 mm 9. 300 mm 220 mmFind the values of moment of inertia Ix with respect to x axis, moment of inertia with respect to y axis ly and product of moment of inertia Ixy of the figure given below. f=18 h=24 k=35 80mm h X k 20mm f 50mm 20mmY YI R a a image 1 b
- Consider the figure shown, which of the following statements is true? Select one: O A. The area moment of inertia of the figure about the x-axis is greater than its area moment of inertia about the y-axis O B. The area moment of inertia of the figure about the x-axis shown is greater than its area moment of inertia about a horizontal axis passing through its centroid O C. The polar moment of inertia of the figure about its centroid is equal to its polar moment of inertia about the origin of the coordinate axes shown O D. The sum of the area moments of inertia of the figure about the x- and y-axes will be equal to its centroidal polar moment inertiaDetermine the moment of inertia and radius of gyration of the area shown below with respect to the x-axis. Show all calculations. 15 mn 15 mm 10 um 24 mm 28 mm--28 mm milDetermine the moment of inertia about given x and y axis in the following figure if a=10 mm.
- Determine the moment of inertia for the shaded area about the x-axis. Express your answer to three significant figures and include the appropriate units. Look at the images for the needed figure and details to answer the question. y_1=x m y_2=2.1x m^2For the area shown, the moment of inertia about axis 1 is 125 in^4 and the total area is 23 in^2. If d1 = 1 in., d2 = 1.3 in. and d3 = 1.1 in., what is the moment of inertia about axis 4? Express your answer in in“, to the nearest 0.1 in“. Axis 4 d3 3 *d2 2 1Calculate IX,IY and the corresponding radii of gyration of the composite figure. The triangle in figure 2 is equilateral and figure 3 is a half circle 2in 시in 4in